人工光合作用
光催化
格式化
分解水
太阳能燃料
可扩展性
纳米技术
太阳能
材料科学
光催化分解水
工艺工程
还原(数学)
计算机科学
催化作用
化学
工程类
电气工程
生物化学
数据库
数学
几何学
作者
Tsuyoshi Takata,Kazunari Domen,Sayuri Okunaka,Hiromasa Tokudome,Naohiko Kato,Takeshi Morikawa,Yasuhiko Takeda
出处
期刊:The Royal Society of Chemistry eBooks
[The Royal Society of Chemistry]
日期:2023-03-08
卷期号:: 331-362
被引量:1
标识
DOI:10.1039/9781839167768-00331
摘要
Artificial photosynthesis using semiconductor materials is considered to be an attractive approach to converting solar energy into chemical fuels. The development of a scalable artificial photosynthesis system is one of the most important issues for practical applications. In this chapter, recent advantages for the practical use of solar H2 production via photocatalytic water splitting and formate production via CO2 reduction are discussed. Large-scale H2 production has been demonstrated for the first time using a 100 m2 sized panel reactor comprised of UV-light-driven photocatalyst sheets. In addition, visible-light-driven printable photocatalyst sheets, which can be prepared inexpensively and easily extended to scalable applications, are explored. Also, large-scale formate production over a CO2 reduction system using a new molecular catalyst is demonstrated. These approaches are an essential step toward any future practical applications.
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